ERS statement on respiratory muscle testing at rest and during exercise

Заявление ERS по исследованию дыхательных мышц в покое и при физической нагрузке
Pierantonio Laveneziana, André Luís Pereira de Albuquerque, Andréa Aliverti, Tony G. Babb, Esther Barreiro, Martin Dres, Bruno‐Pierre Dubé, Brigitte Fauroux, Joaquim Gea, Jordan A. Guenette, Anna L. Hudson, Hans‐Joachim Kabitz, Franco Laghi, Daniël Langer, Yuan-Ming Luo, J. Alberto Neder, Denis O’Donnell, Michael I. Polkey, Roberto Rabinovich, Andrea Rossi, Frédéric Sériès, Thomas Similowski, Christina M. Spengler, Ioannis Vogiatzis, Samuel Vergès
2019-04-07

exercise assessmentrespiratory mechanicsrespiratory muscle imagingrespiratory muscle neurophysiologyrespiratory muscle testing
Assessing respiratory mechanics and muscle function is critical for both clinical practice and research purposes. Several methodological developments over the past two decades have enhanced our understanding of respiratory muscle function and responses to interventions across the spectrum of health and disease. They are especially useful in diagnosing, phenotyping and assessing treatment efficacy in patients with respiratory symptoms and neuromuscular diseases. Considerable research has been undertaken over the past 17 years, since the publication of the previous American Thoracic Society (ATS)/European Respiratory Society (ERS) statement on respiratory muscle testing in 2002. Key advances have been made in the field of mechanics of breathing, respiratory muscle neurophysiology (electromyography, electroencephalography and transcranial magnetic stimulation) and on respiratory muscle imaging (ultrasound, optoelectronic plethysmography and structured light plethysmography). Accordingly, this ERS task force reviewed the field of respiratory muscle testing in health and disease, with particular reference to data obtained since the previous ATS/ERS statement. It summarises the most recent scientific and methodological developments regarding respiratory mechanics and respiratory muscle assessment by addressing the validity, precision, reproducibility, prognostic value and responsiveness to interventions of various methods. A particular emphasis is placed on assessment during exercise, which is a useful condition to stress the respiratory system.
1
Exercise testing receives particular emphasis because it provides a useful physiological stress condition for evaluating respiratory muscle function.
2
Major advances since the 2002 ATS/ERS statement include respiratory muscle neurophysiology methods such as electromyography, electroencephalography, and transcranial magnetic stimulation.
3
Respiratory mechanics and muscle-function testing is essential for diagnosing, phenotyping, and evaluating treatment efficacy in respiratory and neuromuscular diseases.
4
Respiratory muscle imaging has advanced through ultrasound, optoelectronic plethysmography, and structured light plethysmography.
5
The ERS task force evaluates respiratory assessment methods according to validity, precision, reproducibility, prognostic value, and responsiveness to interventions.

Respiratory mechanics and respiratory muscle function in health, disease, and during exercise

Validity, precision, reproducibility, prognostic value, and responsiveness to interventions of respiratory muscle assessment methods at rest and during exercise

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2019-04-07
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Authors
Pierantonio Laveneziana
André Luís Pereira de Albuquerque
Andréa Aliverti
Tony G. Babb
Esther Barreiro
Martin Dres
Bruno‐Pierre Dubé
Brigitte Fauroux
Joaquim Gea
Jordan A. Guenette
Anna L. Hudson
Hans‐Joachim Kabitz
Franco Laghi
Daniël Langer
Yuan-Ming Luo
J. Alberto Neder
Denis O’Donnell
Michael I. Polkey
Roberto Rabinovich
Andrea Rossi
Frédéric Sériès
Thomas Similowski
Christina M. Spengler
Ioannis Vogiatzis
Samuel Vergès
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